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01. Alvarez, Juan
02. Burkholder, Andrew
03. Dover, Jordan
04. Hartranft, Ethan
05. Keath, Brent
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. Pfautz, Olivia
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. Roth, Arielle
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. Smith, Scott
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. Trinh, Kevin
10. Vang, Lue
11. Weaver, Amy
12. Weaver, Evan
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HERSHY PARK LAB OF AWESOME
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I MISPELLED HERSHEY
Sidewinder
U = mgh = (8255)*(9.8)*(35.5) = 2.87x10^6J
v = sqrt(Vx^2 + Vy^2) = 12.23 m/s
KE = 1/2mv^2 = 1/2*(8255)*(12.23) = 6.17x10^5
p = mv = 1.0x10^5
Storm Runner
U = mgh = (8255)*(9.8)*(46) = 3.72x10^6J
v = sqrt(Vx^2 + Vy^2) = 18.81 m/s
KE = 1/2mv^2 = 1/2*(8255)*(18.81) = 1.46x10^6
p = mv = 1.55x10^5
Assumptions -
Storm Runner's car is the same mass as the sidewinders
The initial part of Storm Runner has no change in position in the y direction
I believe this data seems on surface level to be legitimate.
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Sidewinder
U = mgh = (8255)*(9.8)*(35.5) = 2.87x10^6J
v = sqrt(Vx^2 + Vy^2) = 12.23 m/s
KE = 1/2mv^2 = 1/2*(8255)*(12.23) = 6.17x10^5
p = mv = 1.0x10^5
Storm Runner
U = mgh = (8255)*(9.8)*(46) = 3.72x10^6J
v = sqrt(Vx^2 + Vy^2) = 18.81 m/s
KE = 1/2mv^2 = 1/2*(8255)*(18.81) = 1.46x10^6
p = mv = 1.55x10^5
Assumptions -
Storm Runner's car is the same mass as the sidewinders
The initial part of Storm Runner has no change in position in the y direction
I believe this data seems on surface level to be legitimate.